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    • 15. 发明授权
    • Linear-reciprocating device
    • 线性往复式装置
    • US09074624B2
    • 2015-07-07
    • US14365291
    • 2012-07-13
    • Katsuyuki HorieShinichi Saito
    • Katsuyuki HorieShinichi Saito
    • F16C29/06F16C29/00F16C29/02F16C29/04
    • F16C29/06F16C29/007F16C29/008F16C29/02F16C29/043F16C29/045F16C29/0602F16C29/0685
    • A linear-reciprocating device 10 has a moving block 13 which is attached to a guide rail 12 provided to a support base 11 so as to freely reciprocate, ball rolling grooves 23a and 23b which form ball rolling paths 24a and 24b together with ball rolling grooves 21a and 21b are provided to a base end of the moving block 13, and ball circulation holes 25a and 25b which are communicated to the ball rolling paths 24a and 24b are provided to a base end. In a longitudinal-directional middle area of the moving block 13, return blocks 32a and 32b which communicate between the ball rolling paths 24a and 24b and the ball circulation holes 25a and 25b are provided. The moving block 13 moves to a position at which the moving block 13 is moved to a position at which the moving block is protruded from a distal end of the guide rail 12.
    • 线性往复运动装置10具有移动块13,该移动块13附接到设置在支撑基座11上以便自由往复运动的导轨12,与滚珠滚动槽一起形成滚珠滚动路径24a和24b的滚珠滚动槽23a和23b 21a和21b设置在移动块13的基端,并且连通到滚珠滚动路径24a和24b的滚珠循环孔25a和25b设置在基端。 在移动块13的纵向中间区域中,设置有滚珠滚动路径24a和24b与滚珠循环孔25a和25b连通的返回块32a和32b。 移动块13移动到移动块13移动到从导轨12的远端突出移动块的位置的位置。
    • 19. 发明授权
    • Semiconductor device
    • 半导体器件
    • US08089067B2
    • 2012-01-03
    • US12318452
    • 2008-12-30
    • Shinichi SaitoHiroyuki UchiyamaToshiyuki Mine
    • Shinichi SaitoHiroyuki UchiyamaToshiyuki Mine
    • H01L33/00
    • H01L27/156H01L33/16H01L33/34
    • A self emission silicon emission display is provided at a low price, which contains silicon and oxygen which exist in abundance on the earth as the main component and which can be easily formed by conventional silicon process. A light emission element includes a first electrode for injecting electrons, a second electrode for injecting holes, and a light emission part electrically connected to the first electrode and the second electrode, where the light emission part includes amorphous or polycrystalline silicon consisting of a single layer or plural layers and where the dimension of the silicon in at least one direction is controlled to be several nanometers.
    • 以低价格提供自发射硅发射显示器,其包含以地球上丰富地存在的硅和氧作为主要成分,并且可以通过常规硅工艺容易地形成。 发光元件包括用于注入电子的第一电极,用于注入空穴的第二电极和与第一电极和第二电极电连接的发光部分,其中发光部分包括由单层组成的非晶或多晶硅 或多个层,并且其中至少一个方向上的硅的尺寸被控制为几纳米。
    • 20. 发明授权
    • Semiconductor LED, opto-electronic integrated circuits (OEIC), and method of fabricating OEIC
    • 半导体LED,光电集成电路(OEIC)以及制造OEIC的方法
    • US08030668B2
    • 2011-10-04
    • US11935904
    • 2007-11-06
    • Digh HisamotoShinichi SaitoShinichiro Kimura
    • Digh HisamotoShinichi SaitoShinichiro Kimura
    • H01L27/15
    • H01L27/15G02B6/13G02B6/43H01L33/02H01L33/34
    • A light emitting diode demonstrating high luminescence efficiency and comprising a Group IV semiconductor such as silicon or germanium equivalent thereto as a basic component formed on a silicon substrate by a prior art silicon process, and a fabricating method of waveguide thereof are provided. The light emitting diode of the invention comprises a first electrode for implanting electrons, a second electrode for implanting holes, and a light emitting section electrically connected to the first and the second electrode, wherein the light emitting section is made out of single crystalline silicon and has a first surface and a second surface facing the first surface, wherein with respect to plane orientation (100) of the first and second surfaces, the light emitting section crossing at right angles to the first and second surfaces is made thinner, and wherein a material having a high refractive index is arranged around the thin film section.
    • 提供了高发光效率的发光二极管,并且包括通过现有技术的硅工艺在硅衬底上形成的等价于其的硅或锗等IV族半导体作为基底部件,以及其波导管的制造方法。 本发明的发光二极管包括用于注入电子的第一电极,用于注入孔的第二电极和与第一和第二电极电连接的发光部分,其中发光部分由单晶硅制成, 具有面向第一表面的第一表面和第二表面,其中相对于第一表面和第二表面的平面取向(100),使与第一表面和第二表面成直角交叉的发光部分变薄,并且其中 具有高折射率的材料设置在薄膜部分周围。